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Erschienen in: Hydrogeology Journal 3/2015

01.05.2015 | Report

Time-lapse electrical resistivity tomography of a water infiltration test on Johannishus Esker, Sweden

verfasst von: İnan Ulusoy, Torleif Dahlin, Bo Bergman

Erschienen in: Hydrogeology Journal | Ausgabe 3/2015

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Abstract

Managed aquifer recharge (MAR) is an efficient way to remove organic matter from raw water and, at the same time, reduce temperature variation. Two MAR sites were constructed by Karlskrona municipality on Johannishus Esker in Sweden. One of these sites, Vång, was monitored for electrical conductivity and electrical resistivity (using electrical resistivity tomography - ERT) during a 9-week tracer infiltration test. The aim of the monitoring was to map the pathways of the infiltrated water, with the overall goal to increase the efficiency of the MAR. ERT proved useful in determining both the nature of the esker formation and the water migration pathways. In Vång, the esker ridge follows a tectonically controlled paleo-valley. The fault/fracture zone in the bedrock along this paleo-valley was mapped. During the tracer test, the infiltrated water was detected in the area close to the infiltration ponds, whereas far-situated observation wells were less affected. For sequential infiltration and recharge periods in MAR, the timing of the well pumping is another important factor. Natural groundwater flow direction was a determinant in the infiltration process, as expected. ERT measurements provide supplementary data for site selection, for monitoring the functionality of the MAR sites, and for revealing the geological, hydrogeological and structural characteristics of the site.

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Metadaten
Titel
Time-lapse electrical resistivity tomography of a water infiltration test on Johannishus Esker, Sweden
verfasst von
İnan Ulusoy
Torleif Dahlin
Bo Bergman
Publikationsdatum
01.05.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
Hydrogeology Journal / Ausgabe 3/2015
Print ISSN: 1431-2174
Elektronische ISSN: 1435-0157
DOI
https://doi.org/10.1007/s10040-014-1221-2

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